论文标题

Piernik MHD代码中CR能量谱(Cresp)算法的实施。 I. Cr电子在Eulerian网格上的频谱分辨率传播

Implementation of CR Energy SPectrum (CRESP) algorithm in PIERNIK MHD code. I. Spectrally resolved propagation of CR electrons on Eulerian grids

论文作者

Ogrodnik, Mateusz, Hanasz, Michał, Wóltański, Dominik

论文摘要

我们提出了一种有效的算法,以遵循宇宙射线(CR)的光谱演化,并在Eulerian网格上加上MHD系统。该算法设计用于在银河系媒介物的MHD模拟中研究CR能谱演化。 CR传输的基本算法依赖于两臂的幂律方法,也称为粗粒粒子动量最终体积(CGMV),用于求解Fokker-Planck CR CR传输方程,其中动量量很少,在动量坐标的数十年中延伸了数十年。我们提出了具有新型特征的CGMV的扩展,该功能允许动量边界在人口分布极端附近的CR动量增长或损失方面发生变化。我们的扩展涉及对含有光谱截止的动量箱的特殊处理。与固定宽度的常规垃圾箱相反,这些垃圾箱的宽度可变,其外边缘与光谱截止量一致。截止位置是根据外箱中的颗粒数密度和能量密度估算的,该材料的额外参数的较小值代表了CR光谱能量密度最小的额外参数。我们进行了一系列基本测试,以验证算法,并在可能的情况下证明了测试模拟的结果以合理的精度对应于类似的分析溶液的结果。在对银河CR驱动的风问题的更复杂的测试中,我们获得了与CR种群对流,扩散,绝热和同步子冷却的预期相一致的结果。

We present an efficient algorithm to follow spectral evolution of Cosmic Rays (CR) coupled with an MHD system on Eulerian grids. The algorithm is designed for studies of CR energy spectrum evolution in MHD simulations of a galactic interstellar medium. The base algorithm for CR transport relies on the two-moment piece-wise power-law method, known also as Coarse Grained Momentum Final Volume (CGMV), for solving the Fokker-Planck CR transport equation, with a low number of momentum-bins extending over several decades of the momentum coordinate. We propose an extension of the CGMV with a novel feature which allows momentum boundaries to change in response to CR momentum gains or losses near the extremes of the population distribution. Our extension involves a special treatment of momentum bins containing spectral cutoff. Contrary to the regular bins of fixed width, those bins have variable-width, and their outer edges coincide with spectral cutoffs. The cutoff positions are estimated from the particle number density and energy density in the outer bins for an assumed small value of an additional parameter representing the smallest physically significant level of CR spectral energy density. We performed a series of elementary tests to validate the algorithm and demonstrated, whenever possible, that results of the test simulations correspond, with a reasonable accuracy, to the results of analogous analytical solutions. In a more complex test of galactic CR-driven wind problem we obtained results consistent with expectations regarding the effects of advection, diffusion, adiabatic, and synchrotron cooling of a CR population.

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